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Plant performance was estimated to range from 13%to40%0% of nameplate capacity.
The N derived from the atmosphere (%Ndfa) of C. microphylla was estimated to range from 84 to 95%.
As a result, the total supply cost was estimated to range from 0.83 to 0.88 $/liter according the blending policies.
As a result, the levelized energy cost was estimated to range from 0.53 to 1.34 $/kWh according the examined scenarios.
As a result, the total annual cost was estimated to range from 46 to 76 M$/year according to the demand scenarios.
The mean anchoring rates were 57% (M) and 74% (H), and the anchored thickness was estimated to range from 12.6 μm to 18.3 μm.
From the resulting data, the macroscopic permeability of the fault fracture zone was estimated to range roughly from 1 × 10−6 to 2 × 10−6 m/s.
On the basis of these changes, the macroscopic permeability of the fault fracture zone was estimated to range from 1 × 10−6 to 2 × 10−6 m/s.
Based on the economic analysis, the polymer cost was estimated to range from $1.36 to $1.51 kg−1, comparable to the costs of petrol-based polystyrene ($1.2 to $1.6 kg−1).
The instantaneous peak water demand was estimated to range between 16 and 93 l/min within the monitored homes, which has a strong implication for the design of household water supply system.
The spatial periods of the HSFL are significantly smaller than the irradiation wavelength λ 0. For example, for aluminum this period was estimated to range from 20 to 200 nm at λ 0=0.8 μm [2, 3].
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CEO of Professional Science Editing for Scientists @ prosciediting.com